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Field
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microscopy, SEM, x-ray scattering, gas pycnometry & density gradient column analysis, LFA thermal diffusivity, single filament tensile testing, dilatometry for CTE, battery cell fabrication & cycling analyses
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including X-ray diffraction (XRD), scanning electron microscopy (SEM), transmission electron microscopy (TEM), Raman spectroscopy, Fourier-transform infrared spectroscopy (FTIR), mechanical testing
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research Strong quantitative skills, including experience with regression, structural equation modeling (SEM), and multilevel modeling (MLM) Experience with measurement development, factor analytic methods
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using the Advanced Photon Source (APS) and other characterization techniques such as scanning electron microscopy (SEM) and powder diffraction. This is a one-year appointment centered on the development
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-liquid and liquid-liquid separation experiments to meet project goals Use analytical techniques such as NMR, MS, FT-IR, TGA, DSC, XRD, BET, SEM for characterization. Perform ion separation experiments, use
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aceitar sem reservas a partir da data de início do presente contrato. 2. O desempenho de funções pelo Segundo Outorgante a título de bolseiro é efetuado em regime de dedicação exclusiva nos termos previstos
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Diffractometer, Rigaku XtaLAB Synergy-I Single Crystal X-ray Diffractometer, JOEL SEM, DRIFTS, Micromeritics ASAP2020, ASAP2020 Plus, 3FLEX Gas Sorption Analyzer, HPVA-II High-Pressure Gas Sorption Apparatus, DVS
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University of North Carolina at Chapel Hill | Chapel Hill, North Carolina | United States | about 1 month ago
mechanisms at elevated temperature. Experience with standard materials characterization (XRD, SEM/EDS, XPS, TGA/DSC). Ability to work independently in a glovebox and dry room environment while following
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perovskite precursor ink formulations and nucleation/crystallization processes Have significant experience performing thin-film and solution metrology and analyzing data from: XRD, SEM, NMR, FTIR, UV-vis, and
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of the produced powders and films: SEM/EDS, TEM, XRD, ICP-OES, EBSD, etc. Correlate material morphology and composition with final TE material and device performance. Develop TE devices optimized for both energy